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Titlebook: High Performance Memory Systems; Haldun Hadimioglu,Jeffrey Kuskin,Ashwini Nanda Book 2004 Springer Science+Business Media New York 2004 Ha

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書目名稱High Performance Memory Systems
編輯Haldun Hadimioglu,Jeffrey Kuskin,Ashwini Nanda
視頻videohttp://file.papertrans.cn/427/426418/426418.mp4
圖書封面Titlebook: High Performance Memory Systems;  Haldun Hadimioglu,Jeffrey Kuskin,Ashwini Nanda Book 2004 Springer Science+Business Media New York 2004 Ha
描述The State of Memory Technology Over the past decade there has been rapid growth in the speed of micropro- cessors. CPU speeds are approximately doubling every eighteen months, while main memory speed doubles about every ten years. The International Tech- nology Roadmap for Semiconductors (ITRS) study suggests that memory will remain on its current growth path. The ITRS short-and long-term targets indicate continued scaling improvements at about the current rate by 2016. This translates to bit densities increasing at two times every two years until the introduction of 8 gigabit dynamic random access memory (DRAM) chips, after which densities will increase four times every five years. A similar growth pattern is forecast for other high-density chip areas and high-performance logic (e.g., microprocessors and application specific inte- grated circuits (ASICs)). In the future, molecular devices, 64 gigabit DRAMs and 28 GHz clock signals are targeted. Although densities continue to grow, we still do not see significant advances that will improve memory speed. These trends have created a problem that has been labeled the Memory Wall or Memory Gap.
出版日期Book 2004
關(guān)鍵詞Hardware; Random Access Memory; algorithms; architecture; computer; computer architecture; computer engine
版次1
doihttps://doi.org/10.1007/978-1-4419-8987-1
isbn_softcover978-1-4612-6477-4
isbn_ebook978-1-4419-8987-1
copyrightSpringer Science+Business Media New York 2004
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José F. Martínez,Josep TorrellasIn this paper we give necessary and sufficient conditions for the existence of self dual 2k circulant codes. We specify the number of such codes when these conditions are satisfied..We prove that all possible 2k circulant codes can be constructed by our method, for every possible code length, and every field IF..
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Introduction to High-Performance Memory SystemsWe begin this book by providing the reader with an overview of the five perspectives of High Performance Memory Systems that are presented in this book.
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[18] are quasi-perfect. We get some new bounds for the Berlekamp-Gale switching problem [7]. It gives the exact covering radius for some codes of length up to 31 and is within 1 or 2 of the exact value for the even quadratic-residue codes of lengths 41 and 47.
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